mirror of https://github.com/ARMmbed/mbed-os.git
341 lines
11 KiB
C++
341 lines
11 KiB
C++
/* Mbed Microcontroller Library
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* Copyright (c) 2017-2019 ARM Limited
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* SPDX-License-Identifier: MIT
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*
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* Permission is hereby granted, free of charge, to any person obtaining a copy
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* of this software and associated documentation files (the "Software"), to deal
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* in the Software without restriction, including without limitation the rights
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* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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* copies of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in
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* all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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* SOFTWARE.
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*/
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#ifndef CONDITIONVARIABLE_H
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#define CONDITIONVARIABLE_H
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#include <stdint.h>
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#include "rtos/mbed_rtos_types.h"
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#include "rtos/Mutex.h"
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#include "rtos/Semaphore.h"
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#include "platform/NonCopyable.h"
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#if MBED_CONF_RTOS_PRESENT || defined(DOXYGEN_ONLY)
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namespace rtos {
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/** \addtogroup rtos-public-api */
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/** @{*/
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struct Waiter;
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/**
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* \defgroup rtos_ConditionVariable ConditionVariable class
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* @{
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*/
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/** The ConditionVariable class is a synchronization primitive that allows
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* threads to wait until a particular condition occurs.
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*
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* Use the condition variable in conjunction with a mutex to safely wait for
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* or notify waiters of condition changes to a resource accessible by multiple
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* threads.
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*
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* The thread that intends to wait on a ConditionVariable must:
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* - Acquire a lock on a mutex.
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* - Execute `wait`, `wait_for` or `wait_until`. While the thread is waiting,
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* the mutex is unlocked.
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* - When the condition variable has been notified, or in the case of `wait_for`
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* and `wait_until` the timeout expires, the thread is awakened.
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*
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* The thread that intends to notify a ConditionVariable must:
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* - Acquire a lock on the mutex used to construct the condition variable.
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* - Execute `notify_one` or `notify_all` on the condition variable.
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*
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* All threads waiting on the condition variable wake when
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* `ConditionVariable::notify_all` is called.
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* At least one thread waiting on the condition variable wakes
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* when `ConditionVariable::notify_one` is called.
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*
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* While a thread is waiting for notification of a
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* ConditionVariable, it releases the lock held on the mutex.
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* The ConditionVariable reacquires the mutex lock before exiting the wait
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* function.
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*
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* #### Unspecified behavior
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* - The thread that is unblocked on `ConditionVariable::notify_one` is
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* unspecified if there are multiple waiters.
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* - When `ConditionVariable::notify_one` or `ConditionVariable::notify_all` is
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* called and there are one or more waiters, and one or more threads
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* attempting to acquire the condition variable's mutex, the order in which the mutex is
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* acquired is unspecified.
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* - Spurious notifications (not triggered by the application) can occur.
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*
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* #### Undefined behavior
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* - Calling wait if the mutex is not locked by the current thread is undefined
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* behavior.
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* - The order in which waiting threads acquire the condition variable's
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* mutex after `ConditionVariable::notify_all` is called is undefined.
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* - The behavior of `ConditionVariable::wait` and `ConditionVariable::wait_for`
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* is undefined if the condition variable's mutex is locked more than once by
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* the calling thread.
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*
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* @note Synchronization level: Thread safe
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*
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* Example:
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*
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* @code
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* #include "mbed.h"
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*
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* Mutex mutex;
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* ConditionVariable cv(mutex);
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*
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* // These variables are protected by locking the mutex.
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* uint32_t work_count = 0;
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* bool done = false;
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*
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* void worker_thread()
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* {
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* // Acquire lock on mutex before accessing protected variables and waiting.
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* mutex.lock();
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*
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* while (done == false) {
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* printf("Worker thread: Count: %lu\r\n", work_count);
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*
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* // Wait for main thread to notify the condition variable.
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* printf("Worker thread: Waiting\r\n");
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* cv.wait();
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* }
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*
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* printf("Worker: Exiting\r\n");
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*
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* // The condition variable acquires the lock when exiting the `wait` function.
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* // Unlock mutex when exiting the thread.
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* mutex.unlock();
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* }
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*
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* int main()
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* {
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* Thread thread;
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* thread.start(worker_thread);
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*
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* for (int i = 0; i < 5; i++) {
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* // Acquire lock on mutex before modifying variables and notifying.
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* mutex.lock();
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*
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* // Change count and notify waiters.
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* work_count++;
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* printf("Main thread: Set count to: %lu\r\n", work_count);
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* printf("Main thread: Notifying worker thread\r\n");
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* cv.notify_all();
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*
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* // Mutex must be unlocked before the worker thread can acquire it.
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* mutex.unlock();
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*
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* wait(1.0);
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* }
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*
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* // Change done and notify waiters of this.
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* mutex.lock();
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* done = true;
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* cv.notify_all();
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* mutex.unlock();
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*
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* thread.join();
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*
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* printf("Main: Exiting\r\n");
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* }
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* @endcode
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*/
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class ConditionVariable : private mbed::NonCopyable<ConditionVariable> {
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public:
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/** Create and initialize a ConditionVariable object.
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*
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* @note You cannot call this function from ISR context.
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*/
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ConditionVariable(Mutex &mutex);
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/** Wait for a notification.
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*
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* Wait causes the current thread to block until the condition variable
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* receives a notification from another thread.
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*
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* @note - The thread calling this function must be the owner of the
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* ConditionVariable's mutex, and it must be locked exactly once.
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*
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* @note - Spurious notifications can occur, so the caller of this API
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* should check to make sure the condition the caller is waiting on has
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* been met.
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*
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* @note - The current thread releases the lock while inside the wait
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* function and reacquires it upon exiting the function.
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*
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* Example:
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* @code
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* mutex.lock();
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*
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* while (!condition_met) {
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* cond.wait();
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* }
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*
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* function_to_handle_condition();
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*
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* mutex.unlock();
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* @endcode
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*
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* @note You cannot call this function from ISR context.
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*/
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void wait();
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/** Wait for a notification until the specified time.
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*
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* Wait until causes the current thread to block until the condition
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* variable is notified, or a specific time given by millisec parameter is
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* reached.
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*
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* @param millisec Absolute end time referenced to `Kernel::get_ms_count()`
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* @return `true` if a timeout occurred, `false` otherwise.
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*
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* @note - The thread calling this function must be the owner of the
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* ConditionVariable's mutex, and it must be locked exactly once.
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*
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* @note - Spurious notifications can occur, so the caller of this API
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* should check to make sure the condition the caller is waiting on has
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* been met.
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*
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* @note - The current thread releases the lock while inside the wait
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* function and reacquires it upon exiting the function.
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*
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* Example:
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* @code
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* mutex.lock();
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* uint64_t end_time = Kernel::get_ms_count() + COND_WAIT_TIMEOUT;
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*
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* while (!condition_met) {
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* if (cond.wait_until(end_time)) {
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* break;
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* }
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* }
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*
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* if (condition_met) {
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* function_to_handle_condition();
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* }
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*
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* mutex.unlock();
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* @endcode
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*
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* @note You cannot call this function from ISR context.
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*/
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bool wait_until(uint64_t millisec);
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/** Wait for a notification or timeout.
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*
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* `Wait for` causes the current thread to block until the condition
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* variable receives a notification from another thread, or the timeout
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* specified by the millisec parameter is reached.
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*
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* @param millisec Timeout value or osWaitForever in case of no timeout.
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* @return `true` if a timeout occurred, `false` otherwise.
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*
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* @note - The thread calling this function must be the owner of the
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* ConditionVariable's mutex, and it must be locked exactly once.
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*
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* @note - Spurious notifications can occur, so the caller of this API
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* should check to make sure the condition the caller is waiting on has
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* been met.
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*
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* @note - The current thread releases the lock while inside the wait
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* function and reacquire it upon exiting the function.
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*
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* Example:
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* @code
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* mutex.lock();
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*
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* while (!condition_met) {
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* cond.wait_for(MAX_SLEEP_TIME);
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* if (!condition_met) {
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* do_other_work_while_condition_false();
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* }
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* }
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*
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* if (condition_met) {
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* function_to_handle_condition();
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* }
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*
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* mutex.unlock();
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* @endcode
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*
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* @note You cannot call this function from ISR context.
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*/
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bool wait_for(uint32_t millisec);
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/** Notify one waiter on this condition variable that a condition changed.
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*
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* This function unblocks one of the threads waiting for the condition
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* variable.
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*
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* @note - The thread calling this function must be the owner of the
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* ConditionVariable's mutex.
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*
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* @note - The thread that is unblocked on ConditionVariable::notify_one is
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* undefined if there are multiple waiters.
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*
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* @note You cannot call this function from ISR context.
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*/
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void notify_one();
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/** Notify all waiters on this condition variable that a condition changed.
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*
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* This function unblocks all of the threads waiting for the condition
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* variable.
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*
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* @note - The thread calling this function must be the owner of the
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* ConditionVariable's mutex.
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*
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* @note - If there are one or more waiters and one or more threads
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* attempting to acquire the condition variable's mutex the order in which
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* the mutex is acquired is undefined.
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*
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* @note You cannot call this function from ISR context.
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*/
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void notify_all();
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/** ConditionVariable destructor.
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*
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* @note You cannot call this function from ISR context.
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*/
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~ConditionVariable();
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#if !defined(DOXYGEN_ONLY)
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protected:
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struct Waiter {
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Waiter();
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Semaphore sem;
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Waiter *prev;
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Waiter *next;
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bool in_list;
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};
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static void _add_wait_list(Waiter **wait_list, Waiter *waiter);
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static void _remove_wait_list(Waiter **wait_list, Waiter *waiter);
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Mutex &_mutex;
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Waiter *_wait_list;
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#endif // !defined(DOXYGEN_ONLY)
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};
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/** @}*/
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/** @}*/
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} // namespace rtos
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#endif
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#endif
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